首页> 外文期刊>Plant Molecular Biology >Functional characterization of four APETALA2-family genes (RAP2.6, RAP2.6L, DREB19 and DREB26) in Arabidopsis
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Functional characterization of four APETALA2-family genes (RAP2.6, RAP2.6L, DREB19 and DREB26) in Arabidopsis

机译:拟南芥中四个APETALA2家族基因(RAP2.6,RAP2.6L,DREB19和DREB26)的功能表征

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APETALA2 (AP2) transcription factors (TFs) play very important roles in plant growth and development and in defense response. Here, we report functional characterization of four AP2 TF family genes [(RAP2. 6 (At1g43160), RAP2. 6L (At5g13330), DREB 26 (At1g21910) and DREB19 (At2g38340)] that were identified among NaCl inducible transcripts in abscisic acid responsive 17 (ABR17) transgenic Arabidopsis in our previous microarray analyses. DREB19 and DREB26 function as transactivators and localize in the nucleus. All four genes were abundant in early vegetative and flowering stages, although the magnitude of the expression varied. We observed tissue specific expression patterns for RAP2. 6, RAP2. 6L, DREB19 and DREB26 in flowers and other organs. RAP2. 6 and RAP2. 6L were responsive to stress hormones like jasmonic acid, salicylic acid, abscisic acid and ethylene in addition to salt and drought. DREB19 and DREB26 were less responsive to stress hormones, but the former was highly responsive to salt, heat and drought. Overexpression of RAP2. 6 in Arabidopsis resulted in a dwarf phenotype with extensive secondary branching and small siliques, and DREB26 overexpression resulted in deformed plants. However, overexpression of RAP2. 6L and DREB19 enhanced performance under salt and drought stresses without affecting phenotype. In summary, we have demonstrated that RAP2. 6, RAP2. 6L, DREB26 and DREB19 are transactivators, they exhibit tissue specific expression, and they participate in plant developmental processes as well as biotic and/or abiotic stress signaling. It is possible that the results from this study on these transcription factors, in particular RAP2. 6L and DREB19, can be utilized in developing salt and drought tolerant plants in the future.
机译:APETALA2(AP2)转录因子(TFs)在植物生长发育和防御反应中起着非常重要的作用。在这里,我们报告的四个AP2 TF家族基因[(RAP2。6(At1g43160),RAP2。6L(At5g13330),DREB 26(At1g21910)和DREB19(At2g38340)]的功能表征是在脱落酸响应的NaCl诱导转录本中鉴定的。我们先前的芯片分析中有17个(ABR17)转基因拟南芥,DREB19和DREB26充当反式激活因子并定位于细胞核中,尽管表达量各不相同,但在植物早期和开花期这四个基因都很丰富,我们观察到了组织特异性表达模式花和其他器官中RAP2.6,RAP2.6L,DREB19和DREB26的表达RAP2.6和RAP2.6L对除盐和干旱外的茉莉酸,水杨酸,脱落酸和乙烯等应激激素也有响应。 DREB26对应激激素的反应较弱,但前者对盐,高温和干旱的反应高度,拟南芥中RAP2.6的过度表达导致矮表型和广泛的继发性疼痛和小角果,DREB26过表达导致植物变形。但是,RAP2的过表达。 6L和DREB19在盐和干旱胁迫下增强了性能,而不会影响表型。总之,我们已经证明了RAP2。 6,RAP2。 6L,DREB26和DREB19是反式激活因子,它们表现出组织特异性表达,并且参与植物发育过程以及生物和/或非生物胁迫信号。这项研究的结果可能涉及这些转录因子,尤其是RAP2。 6L和DREB19将来可用于开发耐盐和干旱的植物。

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